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Synthesis and application of boron polymers for enhanced thermal neutron dosimetry

机译:增强热中子剂量学的硼聚合物的合成与应用

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A novel carborane monomer called Allyl Propargyl Carbonate Carborane (APCC) is synthesized and copolymerized with Ally! Diglycol Carbonate (ADC) for use as an efficient polymeric detector for neutron dosimetry. Detector films with an average thickness of 530 to 630 +/- 15 mu m and varying concentration of natural boron from 1 to 5% by weight were prepared by cast copolymerization of APCC and ADC. The detectors were irradiated to dose equivalent of 1 mSv of thermal neutrons and etched chemically using 7 M KOH solution at 60 degrees C. The etching duration was optimized to maximize the net track density and signal to noise ratio due to B-10 (n, alpha) Li-7 reaction in the detector. Tracks registered by the novel detectors are compared with an imported ortho-carborane doped Poly (Allyl Diglycol Carbonate) thermal detector [(PADC)(th)] under identical etching conditions. The results suggested that poly (APCC-co-ADC) with 2% boron is more promising material than (PADC)(th).
机译:合成了一种新型的碳硼烷单体,称为烯丙基丙炔基碳酸酯碳硼烷(APCC),并与Ally!碳酸二乙二醇酯(ADC)用作中子剂量测定的高效聚合物检测器。通过APCC和ADC的浇铸共聚,制备出平均厚度为530至630 +/- 15μm,天然硼浓度为1至5%的检测膜。将探测器辐射至相当于1 mSv的热中子,并在60摄氏度下使用7 M KOH溶液进行化学蚀刻。蚀刻时间经过优化,以使净磁道密度和B-10(n, α)检测器中的Li-7反应。在相同的蚀刻条件下,将新型检测器记录的走线与进口的掺杂邻甲硼烷的聚(碳酸丙二烯丙二醇酯)热检测器[(PADC)(th)]进行比较。结果表明,与(PADC)(th)相比,含2%硼的聚(APCC-co-ADC)更有前景。

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